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Related Concept Videos

Endoscopic Studies I: Bronchoscopy and Thoracoscopy01:30

Endoscopic Studies I: Bronchoscopy and Thoracoscopy

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Endoscopy is a non-surgical medical technique used to examine a person's internal organs and vessels. This lesson will focus on two types of endoscopic studies: bronchoscopy and thoracoscopy.
Bronchoscopy
Description
Bronchoscopy is a procedure that involves direct visualization of the larynx, trachea, and bronchi for diagnostic and therapeutic purposes. A flexible fiber optic or rigid bronchoscope is used to carry out the procedure. The fiber-optic bronchoscope is more frequently used due...
278

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Related Experiment Video

Updated: Sep 19, 2025

Author Spotlight: Expanding Interventional Pulmonology Research with Robotic-Assisted Bronchoscopy
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Efficacy of Single-Anesthesia Bronchoscopy and Resection Using the Shape-Sensing Robotic Navigational Platform.

Bhupaul Ramsuchit1, Nicholas MacDonald1, Matthew Johnston2

  • 1Department of General Surgery, Orlando Health, FL, USA.

Innovations (Philadelphia, Pa.)
|June 6, 2025
PubMed
Summary

Shape-sensing robotic navigational bronchoscopy (SSRNB) effectively localizes and diagnoses challenging lung nodules during single-anesthesia bronchoscopy and resection (SABAR). This approach accelerates treatment and reduces costs for patients with difficult-to-reach pulmonary nodules.

Keywords:
lung cancerrobotic bronchoscopyrobotic surgerysingle anesthesia

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Area of Science:

  • Pulmonology
  • Thoracic Surgery
  • Medical Robotics

Background:

  • Robotic navigational bronchoscopy and endobronchial ultrasound enhance diagnostic yield for pulmonary nodules.
  • Limited data exists on their role in single-anesthesia bronchoscopy and resection (SABAR).

Purpose of the Study:

  • To evaluate the effectiveness of SABAR using shape-sensing robotic navigational bronchoscopy (SSRNB).
  • To analyze diagnostic yield, localization success, treatment timelines, and cost-effectiveness.

Main Methods:

  • Retrospective observational chart review of adult patients undergoing SSRNB (August 2020 - April 2022).
  • Patients categorized by preoperative intent: localization or diagnostic yield.
  • Analysis of diagnostic yield, localization success, treatment timelines, and cost.

Main Results:

  • 100% localization success in patients with localization intent.
  • 76.9% diagnostic yield in patients with biopsy intent undergoing immediate resection.
  • Overall diagnostic yield of 61.8% and $4,000 cost saving for SABAR compared to separate procedures.

Conclusions:

  • SABAR with SSRNB is effective for intraoperative localization and diagnosis of difficult lung nodules.
  • This method accelerates treatment timelines and decreases hospital costs.
  • Further research is needed to identify optimal patient populations for SABAR using SSRNB.